Evensen K B, Loy J B
Department of Plant Science, University of New Hampshire, Durham, New Hampshire 03824.
Plant Physiol. 1978 Jul;62(1):6-9. doi: 10.1104/pp.62.1.6.
Gibberellic acid (GA(3)) promotes and continuous gold light inhibits germination of seeds of a dwarf strain (WB-2) of watermelon [Citrullus lanatus (Thunb.) Matsu. and Nakai]. Osmotic inhibition of germination with mannitol in light-grown seeds of WB-2 was only slightly reversed by GA(3) at the concentrations used, whereas, GA(3) substantially relieved osmotic inhibition in dark-grown seeds.The effects of GA(3) and gold light on development of catalase and invertase activities and on levels of free amino acids in germinating seeds of WB-2 were examined. Light depressed development of catalase and invertase activity. Levels of free amino acids increased more slowly in embryonic axes of light- than dark-incubated seeds, but in cotyledons higher levels of amino acids were maintained in light-grown seeds. GA(3) accelerated the development of catalase activity in whole embryos and invertase activity in embryonic axes, but did not significantly affect invertase activity in cotyledons during germination. GA(3) had little effect on amino acid pools in cotyledons and embryonic axes.
赤霉素(GA₃)能促进西瓜[Citrullus lanatus (Thunb.) Matsu. and Nakai]矮化品系(WB - 2)种子的萌发,而持续的金色光会抑制其种子萌发。在所用浓度下,GA₃只能轻微逆转光照培养的WB - 2种子因甘露醇造成的渗透抑制萌发作用,然而,GA₃能显著缓解黑暗培养种子的渗透抑制作用。研究了GA₃和金色光对WB - 2萌发种子中过氧化氢酶和转化酶活性的发育以及游离氨基酸水平的影响。光照会抑制过氧化氢酶和转化酶活性的发育。与黑暗培养的种子胚轴相比,光照培养种子胚轴中游离氨基酸水平升高得更慢,但在子叶中,光照培养的种子能维持更高水平的氨基酸。GA₃能加速整个胚中过氧化氢酶活性的发育以及胚轴中转化酶活性的发育,但在种子萌发期间对子叶中的转化酶活性没有显著影响。GA₃对子叶和胚轴中的氨基酸库影响很小。